Departament de Genètica i Microbiologia, Facultat de Biociències, Universitat Autònoma de Barcelona, Bellaterra, Spain.
Infect Immun. 2010 Jul;78(7):3217-25. doi: 10.1128/IAI.01321-09. Epub 2010 May 10.
Transcription of the Salmonella enterica recA gene is negatively controlled by the LexA protein, the repressor of the SOS response. The introduction of a mutation (recAo6869) in the LexA binding site, in the promoter region of the S. enterica ATCC 14028 recA gene, allowed the analysis of the effect that RecA protein overproduction has on the fitness of this virulent strain. The fitness of orally but not intraperitoneally inoculated recAo6869 cells decreased dramatically. However, the SOS response of this mutant was induced normally, and there was no increase in the sensitivity of the strain toward DNA-damaging agents, bile salts, or alterations in pH. Nevertheless, S. enterica recAo6869 cells were unable to swarm and their capacity to cross the intestinal epithelium was significantly reduced. The swarming deficiency in recAo6869 cells is independent of the flagellar phase. Moreover, swimming activity of the recAo6869 strain was not diminished with respect to the wild type, indicating that the flagellar synthesis is not affected by RecA protein overproduction. In contrast, swarming was recovered in a recAo6869 derivative that overproduced CheW, a protein known to be essential for this function. These data demonstrate that an equilibrium between the intracellular concentrations of RecA and CheW is necessary for swarming in S. enterica. Our results are the first to point out that the SOS response plays a critical role in the prevention of DNA damage by abolishing bacterial swarming in the presence of a genotoxic compound.
沙门氏菌 recA 基因的转录受到 LexA 蛋白的负调控,LexA 蛋白是 SOS 反应的阻遏物。在沙门氏菌 ATCC 14028 recA 基因启动子区域的 LexA 结合位点引入突变(recAo6869),可以分析 RecA 蛋白过表达对该毒力菌株适应性的影响。经口服而非腹腔接种的 recAo6869 细胞的适应性显著降低。然而,该突变体的 SOS 反应正常诱导,且该菌株对 DNA 损伤剂、胆盐或 pH 变化的敏感性没有增加。尽管如此,沙门氏菌 recAo6869 细胞无法群集,穿过肠上皮的能力显著降低。recAo6869 细胞的群集缺陷与鞭毛阶段无关。此外,recAo6869 菌株的游泳活性与野生型相比没有减弱,表明 flagellar 合成不受 RecA 蛋白过表达的影响。相比之下,在过量表达 CheW 的 recAo6869 衍生菌株中恢复了群集,CheW 是已知对该功能至关重要的一种蛋白。这些数据表明,RecA 和 CheW 之间的细胞内浓度平衡对于沙门氏菌的群集是必要的。我们的结果首次指出,SOS 反应通过在存在遗传毒性化合物时阻止细菌群集,在防止 DNA 损伤方面起着关键作用。